摘要:
A pulse voltage is applied on a process gas to generate discharge plasma. The pulse voltage has a duty ratio controlled in a range of 0.001 percent or more and 8.0 percent or less. Preferably, the discharge plasma has an electron density of 1×1010 cm−3 or larger and an electron temperature of 1.5 eV or lower at a supplied power of 1.0 W/cm2 or more per a unit area of a discharge electrode.
摘要翻译:对工艺气体施加脉冲电压以产生放电等离子体。 脉冲电压的占空比控制在0.001%以上且8.0%以下的范围内。 优选地,放电等离子体的供电功率为1.0W / cm 2,电子密度为1×10 9 cm -3以上,电子温度为1.5eV以下, 每放电电极的单位面积的SUP> 2以上。
摘要:
A display controller including: a host I/F which performs interface processing between the display controller and a host CPU; a memory into which a multimedia processing program is loaded, when the host CPU has read the multimedia processing program from a multimedia processing program group stored in a host memory and transmitted the multimedia processing program to the display controller; a built-in CPU which executes a software processing portion of the multimedia processing assigned to software processing based on the multimedia processing program; and an H/W accelerator which executes a hardware processing portion of the multimedia processing assigned to hardware processing.
摘要:
An image data compression device comprises a quantizing section for quantizing image data with a quantization step changing in accordance with a quantization parameter, a FIFO buffer section for buffering the quantized data corresponding to a plurality of frames, an encoded data generating section for generating encoded data obtained by encoding the quantized data retrieved from the FIFO buffer section asynchronously with writing thereto, and a rate control section for controlling a data size of the encoded data by changing the quantization step. The rate control section finds a predicted data size of the encoded data of the precedent frame from the size of the quantized data of the precedent frame, and sets or releases an upper limit threshold of the quantization parameter based on the number of assignable bits assignable to a compressing process or the number of remaining frames. When setting the upper limit threshold of the quantization parameter, the quantization parameter is found so as to be equal to or less than the upper limit threshold of the quantization parameter using the predicted data size.
摘要:
A honeycomb structure molding apparatus 1 having a spinneret 4 provided with a back pore part 3 for introducing a molding material and a slit part 2 for extruding the molding material, and a press plate 5 for fixing the spinneret 4, in which the spinneret 4 comprises an inner side part 11 and an outer peripheral part 12, the inner side part 11 is protruded to the downstream side to form a level difference part 15 between the inner side part 11 and the outer peripheral part 15, the press plate 5 is opened opposing the inner side part 12 of the spinneret 4 and presses the downstream side of the outer peripheral part 12 of the spinneret 4 through a gap part 7, and there is provided a gap adjusting means 130 capable of changing width of the gap of the gap part 7.
摘要:
A moving image compression (or encoding) device including: a hardware processing section which compresses moving image data by hardware; a data storage section which stores the moving image data processed by the hardware processing section; and a software processing section which compresses the moving image data from the data storage section by software. The hardware processing section includes a plurality of processing sections which perform processing including a discrete cosine transform and quantization of the moving image data. The software processing section performs variable-length coding of the quantized moving image data.
摘要:
A honeycomb structure molding apparatus being free from defects in cells and having a higher strength with thin partition walls forming the cells and having a small cell density; and the apparatus having a plate-like spinneret provided with back pores for introducing a molding material and slits for extruding the molding material, and a press plate for fixing spinneret, the spinneret comprising an inner side and outer peripheral parts, the inner side part protruding downstream to form a level difference part therebetween, the press plate opening opposing the inner side part of the spinneret and presses the outer peripheral part of the spinneret downstream, and width W (mm) of slits, length L 1 (mm) of slits of the inner side part and length L 2 (mm) of slits of the outer peripheral part satisfying following two formulas: L1−L2≧0.4 mm L2≧0.015/W×L1.
摘要:
The method includes the steps of preparing a die main body; performing batch supply hole machining with respect to one principal plane of the die main body to form batch supply holes; using a cutting apparatus to perform slit machining with respect to the other principal plane of the die main body to form slits; without removing the cutting apparatus from the die main body, continuously performing lateral hole machining to form the batch bold portions, which are arranged at least at intersecting portions in the die main body between the batch supply holes and the slits and are arranged corresponding to the slits; and there after removing the cutting apparatus from the die main body to thereby form an integral die. Alternatively, the above slit machining and continuously performing lacteral hole machining steps can be performed first and followed by performing the batch supply hole machining step.
摘要:
To provide an electronic apparatus and electronic apparatus manufacturing method enabling selection of a necessary functional block from among multiple functional blocks or units so that numerous functions can be selectively used with few input/output terminals. An electronic apparatus has input/output terminals 101 for connecting to an external circuit; functional blocks or units 101a to 102c such as DRAM, flash ROM, and an ASIC; a switching circuit 103 that is a two-way analog switch for switching between the functional blocks or units 102a to 102c and input/output terminals 101; and function selection terminals 104 for applying to the switching circuit 103 a signal indicating which functional block of functional blocks or units 102a to 102c to connect to the input/output terminals 101. Because the necessary functional block and the input/output terminals 101 can be connected according to the input to the function selection terminal 104, numerous functions can be selectively used with only a few input/output terminals.
摘要:
The present invention provides a hybrid lens having an axially asymmetrical non-spherical shape, good mass productivity, and excellent shape precision surface precision as well as environment resistant property, and a method for fabricating same, as well as a method and a device for a laser printer using that hybrid lens. In particular, there are disclosed a method, by which, when an axially asymmetrical non-spherical convex lens is formed by the replica method, the shape thereof is transcribed with a high precision, as well as a method and a device for fabricating an axially asymmetrical non-spherical concave lens (female die) serving as an original for the transcription. In a device for fabricating a female die by direct grinding, the positions of a rotation axis of an object to be worked and a rotation axis of a grinding wheel are controlled and it has further a function of correcting mounting errors, when the object to be worked and the grinding wheel are mounted.
摘要:
An image data compression device includes a quantization part quantizing image data with a quantization step that varies based on a quantization parameter, a FIFO buffer part buffering quantized data of a plurality of frames, a coded data formation part reading out the quantized data from the FIFO buffer part asynchronously with a writing to the FIFO buffer part and generating coded data by encoding the quantized data, a rate control part controlling a data size of the coded data by changing the quantization step and a frame skip part skipping a generation process of the image data. The rate control part calculates the quantization parameter by using a predicted data size of the coded data of a previous frame which is calculated from a data size of the quantized data of the previous frame. The frame skip part performs the skip process if a frame, in which the quantization parameter becomes larger than a skip threshold, appears consecutively in a number of times which is equal or more than the number of a skip succession threshold.